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首页> 外文期刊>Comptes Rendus Chimie >Synthesis, characterization, thermal, electrochemical, and DFT studies of mononuclear cyclopalladated complexes containing bidentate phosphine ligands and their biological evaluation as antioxidant and antibacterial agents
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Synthesis, characterization, thermal, electrochemical, and DFT studies of mononuclear cyclopalladated complexes containing bidentate phosphine ligands and their biological evaluation as antioxidant and antibacterial agents

机译:含双齿膦配体的单核环钯配合物的合成,表征,热,电化学和DFT研究及其作为抗氧化剂和抗菌剂的生物学评估

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摘要

The non-symmetric phosphorus ylides and their Pd(II) complexes have been synthesized as potential antioxidant and antibacterial compounds and their structures were elucidated using a variety of physicochemical techniques. The reaction of 1 equiv non-symmetric phosphorus ylides, Ph2PCH2PPh2C(H)C(O)PhX (X = Br (Y~1), Cl (Y~2), NO2 (Y~3), OCH3 (Y~4}) with [Pd(dppe)Cl2] (M~1), followed by treatment with 2 equiv AgOTf led to monomeric chelate complexes, [(dppe)Pd(Ph2PCH2PPh2C(H)C(O)PhX)] (OSO2CF3)2 (X = Br (C~1), Cl (C~2), NO2 (C~3), OCH3 (C~4)), which contain a five-membered P,P chelate ring in one side and a five-membered P,C chelate ring in the other side. Palladium ion complexes were synthesized and investigated by cyclic voltammetry, FT-IR, UV-visible, multinuclear (~1H, ~(31)P and ~(19)F) NMR, thermal analysis and ESI-mass spectroscopic studies. Some complexes and ligands have been studied by powder XRD and single crystal X-ray diffraction techniques. FT-IR and ~(31)P NMR studies revealed that the ylides Y are coordinated to the metal ions via the terminal phosphorus (P_c) of the ylides and methene group (CH). The proposed coordination geometry around the Pd atom in these complexes is defined as slightly distorted square planar by UV-Visible and DFT studies. Thermal stability of all complexes was also shown by TG/DTG methods. Furthermore, the electrochemical behavior of the complexes was investigated by cyclic voltammetry. The results indicate that all complexes are successfully synthesized from the initial ligands. All complexes were analyzed for their antioxidant properties by DPPH free radical scavenging assay. In addition, the antibacterial effects of the hexane-solved complexes were investigated by disc diffusion method against four Gram positive and negative bacteria. All complexes represented antibacterial activity against bacteria tested especially on Gram positive ones. A theoretical study on the structure, ~1H and ~(31)P NMR chemical shifts and the interaction energy between the Pd~(2+) ion and ligands dppe and ylide Y is also reported.
机译:非对称磷酰基化物及其Pd(II)配合物已被合成为潜在的抗氧化剂和抗菌化合物,并使用多种物理化学技术阐明了它们的结构。 1个当量非对称磷酰磷Ph2PCH2PPh2C(H)C(O)PhX(X = Br(Y〜1),Cl(Y〜2),NO2(Y〜3),OCH3(Y〜4} )用[Pd(dppe)Cl2](M〜1),然后用2当量的AgOTf处理产生单体螯合物,[(dppe)Pd(Ph2PCH2PPh2C(H)C(O)PhX)](OSO2CF3)2( X = Br(C〜1),Cl(C〜2),NO2(C〜3),OCH3(C〜4)),它们的一侧含五元P,P螯合环,五元钯离子螯合物环的合成,并通过循环伏安,FT-IR,紫外可见,多核(〜1H,〜(31)P和〜(19)F)NMR,热分析研究钯离子配合物粉末XRD和单晶X射线衍射技术研究了一些配合物和配体,FT-IR和〜(31)P NMR研究表明,Y化合物通过氢键与金属离子配位。亚烷基(CH)和亚甲基(CH)的末端磷(P_c)在这些配合物中拟议的围绕Pd原子的配位几何定义为通过UV-Visible和DFT研究发现扭曲的正方形平面。 TG / DTG方法也显示了所有配合物的热稳定性。此外,通过循环伏安法研究了配合物的电化学行为。结果表明,所有配合物均已成功地从初始配体合成。通过DPPH自由基清除测定法分析所有复合物的抗氧化性能。此外,通过圆盘扩散法研究了己烷溶解的配合物对四种革兰氏阳性和阴性细菌的抗菌作用。所有复合物均具有针对所测试细菌的抗菌活性,尤其是针对革兰氏阳性细菌。还报道了有关结构,〜1H和〜(31)P NMR化学位移以及Pd〜(2+)离子与配体dppe和内酯Y之间相互作用能的理论研究。

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